Separation of deformable particles in deterministic lateral displacement devices

被引:43
|
作者
Quek, Raymond [1 ]
Duc Vinh Le [1 ]
Chiam, K. -H. [1 ]
机构
[1] A STAR Inst High Performance Comp, Singapore 138632, Singapore
来源
PHYSICAL REVIEW E | 2011年 / 83卷 / 05期
关键词
SIZE;
D O I
10.1103/PhysRevE.83.056301
中图分类号
O35 [流体力学]; O53 [等离子体物理学];
学科分类号
070204 ; 080103 ; 080704 ;
摘要
Using numerical simulations, we study the separation of deformable bodies, such as capsules, vesicles, and cells, in deterministic lateral displacement devices, also known as bump arrays. These arrays comprise regular rows of obstacles such as micropillars whose arrangements are shifted between adjacent rows by a fixed amount. We show that, in addition to the zigzag and laterally displaced trajectories that have been observed experimentally, there exists a third type of trajectory which we call dispersive, characterized by seemingly random bumpings off the micropillars. These dispersive trajectories are observed only for large and rigid particles whose diameters are approximately more than half the gap size between micropillars and whose stiffness exceeds approximately 500 MPa. We then map out the regions in phase space, spanned by the row shift, row separation, particle diameter, and particle deformability, in which the different types of trajectories are expected. We also show that, in this phase space, it is possible to transition from zigzag to dispersive trajectories, bypassing lateral displacement. Experimentally, this is undesirable because it limits the ability of the device to sort particles according to size. Finally, we discuss how our numerical simulations may be of use in device prototyping and optimization.
引用
收藏
页数:7
相关论文
共 50 条
  • [1] Behavior of rigid and deformable particles in deterministic lateral displacement devices with different post shapes
    Zhang, Zunmin
    Henry, Ewan
    Gompper, Gerhard
    Fedosov, Dmitry A.
    JOURNAL OF CHEMICAL PHYSICS, 2015, 143 (24):
  • [2] Electrokinetically driven deterministic lateral displacement for particle separation in microfluidic devices
    Hanasoge, Srinivas
    Devendra, Raghavendra
    Diez, Francisco J.
    Drazer, German
    MICROFLUIDICS AND NANOFLUIDICS, 2015, 18 (5-6) : 1195 - 1200
  • [3] Gravity Driven Deterministic Lateral Displacement for Particle Separation in Microfluidic Devices
    Devendra, Raghavendra
    Drazer, German
    ANALYTICAL CHEMISTRY, 2012, 84 (24) : 10621 - 10627
  • [4] Electrokinetically driven deterministic lateral displacement for particle separation in microfluidic devices
    Srinivas Hanasoge
    Raghavendra Devendra
    Francisco J. Diez
    German Drazer
    Microfluidics and Nanofluidics, 2015, 18 : 1195 - 1200
  • [5] Separation of Biological Particles in a Modular Platform of Cascaded Deterministic Lateral Displacement Modules
    Eloise Pariset
    Charlotte Parent
    Yves Fouillet
    Boizot François
    Nicolas Verplanck
    Frédéric Revol-Cavalier
    Aurélie Thuaire
    Vincent Agache
    Scientific Reports, 8
  • [6] Separation of Biological Particles in a Modular Platform of Cascaded Deterministic Lateral Displacement Modules
    Pariset, Eloise
    Parent, Charlotte
    Fouillet, Yves
    Francois, Boizot
    Verplanck, Nicolas
    Revol-Cavalier, Frederic
    Thuaire, Aurelie
    Agache, Vincent
    SCIENTIFIC REPORTS, 2018, 8
  • [7] On the transport of particles/cells in high-throughput deterministic lateral displacement devices: Implications for circulating tumor cell separation
    Aghilinejad, Arian
    Aghaamoo, Mohammad
    Chen, Xiaolin
    BIOMICROFLUIDICS, 2019, 13 (03):
  • [8] Active Posts in Deterministic Lateral Displacement Devices
    Beech, Jason P.
    Keim, Kevin
    Ho, Bao Dang
    Guiducci, Carlotta
    Tegenfeldt, Jonas O.
    ADVANCED MATERIALS TECHNOLOGIES, 2019, 4 (09)
  • [9] Deterministic lateral displacement for particle separation: a review
    McGrath, J.
    Jimenez, M.
    Bridle, H.
    LAB ON A CHIP, 2014, 14 (21) : 4139 - 4158
  • [10] Stiffness influence on particle separation in polydimethylsiloxane-based deterministic lateral displacement devices
    Julius Marhenke
    Tobias Dirnecker
    Nicolas Vogel
    Mathias Rommel
    Microfluidics and Nanofluidics, 2023, 27